Hu Guodong, Jia Huiyi, Hou Yanan, Han Xiao, Gan Lu, Si Jing, Cho Dong-Hyung, Zhang Hong, Fang Jianguo
State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, Gansu 730000, China.
Department of Heavy Ion Radiation Medicine, Institute of Modern Physics, Chinese Academy of Sciences, 509 Nanchang Road, Lanzhou, Gansu 730000, China.
Anal Chem. 2020 Mar 17;92(6):4371-4378. doi: 10.1021/acs.analchem.9b05232. Epub 2020 Mar 4.
Vicinal dithiol-containing proteins (VDPs) play an important role in maintaining the structures and functions of proteins mainly through the conversion between dithiols and disulfide bonds. The content of VDPs also reflects the redox status of an organism. To specifically and expediently detect VDPs, we developed a turn-on monoarsenical fluorescent probe (NEP) based on the intramolecular charge transfer mechanism. Naphthalimide was chosen as a fluorophore and linked with the receptor moiety (cyclic dithiarsolane) via carbamate segment. In the presence of VDPs, NEP displays a strong green fluorescence signal produced by the cyclic dithiarsolane cleavage and subsequent intramolecular cyclization to liberate the fluorophore. Furthermore, NEP exhibits high selectivity toward VDPs over other protein thiols and low molecular weight thiols. The favorable properties of NEP enable it readily to detect VDPs in live cells and . In addition, a remarkable decrease of VDPs in parkinsonism was disclosed for the first time, highlighting that regulating VDPs level has a therapeutic potential for parkinsonism.
含邻二硫醇的蛋白质(VDPs)主要通过二硫醇和二硫键之间的转换在维持蛋白质的结构和功能方面发挥重要作用。VDPs的含量也反映了生物体的氧化还原状态。为了特异性且便捷地检测VDPs,我们基于分子内电荷转移机制开发了一种开启型单砷荧光探针(NEP)。选择萘二甲酰亚胺作为荧光团,并通过氨基甲酸酯片段与受体部分(环状二硫砷烷)相连。在VDPs存在的情况下,NEP会显示出由环状二硫砷烷裂解以及随后的分子内环化产生的强烈绿色荧光信号,从而释放出荧光团。此外,与其他蛋白质硫醇和低分子量硫醇相比,NEP对VDPs表现出高选择性。NEP的良好特性使其能够轻松地在活细胞中检测VDPs。此外,首次揭示了帕金森病中VDPs显著减少,这突出表明调节VDPs水平对帕金森病具有治疗潜力。